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Fiberglass - Cooper Industries

Fiberglass Materials Fiberglass We offer two fire retardant (FR) resins for strut systems, polyester and vinyl ester. Both resins are ideal for corrosive environments. While polyester is sufficient for most uses, vinyl ester is suitable for a broader range of environments. Please refer to the "Corrosion Resistance Guide" for specific applications, page 184. Materials & Finishes Our Fiberglass Strut systems are manufactured from glass fiber-reinforced plastic shapes that meet ASTM E-84, Class 1 Flame Rating and self-extinguishing requirements of ASTM D-635. A surface veil is applied during pultrusion to insure a resin-rich surface and ultraviolet resistance. Fittings The following dimensions apply to all fittings except as noted on the drawings: Hole Size 13/32 ( mm) Dia. Hole Spacing 13/16 ( mm) from end and 17/8 ( mm) on center.

Fiberglass Beam Loading Data for Glass Reinforced Vinyl Ester Resin –– – –

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1 Fiberglass Materials Fiberglass We offer two fire retardant (FR) resins for strut systems, polyester and vinyl ester. Both resins are ideal for corrosive environments. While polyester is sufficient for most uses, vinyl ester is suitable for a broader range of environments. Please refer to the "Corrosion Resistance Guide" for specific applications, page 184. Materials & Finishes Our Fiberglass Strut systems are manufactured from glass fiber-reinforced plastic shapes that meet ASTM E-84, Class 1 Flame Rating and self-extinguishing requirements of ASTM D-635. A surface veil is applied during pultrusion to insure a resin-rich surface and ultraviolet resistance. Fittings The following dimensions apply to all fittings except as noted on the drawings: Hole Size 13/32 ( mm) Dia. Hole Spacing 13/16 ( mm) from end and 17/8 ( mm) on center.

2 Width 15/8 ( mm). Thickness 1/4 ( mm). Metric Metric dimensions are shown in parentheses. Unless noted, all metric dimensions are in millimeters. 183 Strut Systems Fiberglass Channel Resin Information We offer two fire retardant (FR) resins for strut systems, polyester and vinyl ester. Both resins are ideal forcorrosive environments. While polyester is sufficient for most uses, vinyl ester is suitable for a broader range of environments. Please refer to the "Corrosion Resistance Guide" below for specific applications. Corrosion Resistance Guide Chemicals 70 F (21 C) 160 F (71 C) Chemicals 70 F (21 C) 160 F (71 C). Acetic acid 5% BFP/BFV BFP/BFV Methyl alcohol 10% BFP/BFV BFV-150 **. Acetic acid 52% BFP/BFV BFV-210 ** Naphtha BFP/BFV BFP/BFV. Aluminum potassium sulfate 5% BFP/BFV BFP/BFV Nitric acid 5% BFP/BFV BFP/BFV.

3 Fiberglass Materials Ammonium hydroxide 10% BFP/BFV BFV-150 ** Nitric acid 20% BFV BFV-120 **. Ammonium nitrate BFP/BFV BFP/BFV Phosphoric acid 10% BFP/BFV BFP/BFV. Benzene sulfonic acid 5% BFP/BFV BFP/BFV Phosphoric acid 30% BFP/BFV BFP/BFV. Calcium chloride BFP/BFV BFP/BFV Phosphoric acid 85% BFP/BFV BFP/BFV. Carbon tetrachloride BFV BFV-100 ** Sodium bicarbonate 10% BFP/BFV BFP/BFV. Chlorine dioxide 15% BFP/BFV BFV-150 ** Sodium bisulfate BFP/BFV BFP/BFV. Chromic acid 5% BFV BFV-150 ** Sodium carbonate BFP/BFV BFV. Copper sulfate BFP/BFV BFP/BFV Sodium chloride BFP/BFV BFP/BFV. Diesel fuel BFP/BFV BFV Sodium hydroxide 1-50% BFV BFV-120 **. Ethylene glycol BFP/BFV BFP/BFV Sodium hypochlorite 5% BFP/BFV BFV-120 **. Fatty acids 100% BFP/BFV BFP/BFV Sodium nitrate BFP/BFV BFP/BFV. Ferrous sulfate BFP/BFV BFP/BFV Sodium silicate BFP/BFV BFV-210 **.

4 Fluosilicic acid 0-20% BFV BFV Sodium sulfate BFP/BFV BFP/BFV. Gasoline BFP/BFV BFV Sulfuric acid 0-30% BFP/BFV BFP/BFV. Hydrochloric acid 1% BFP/BFV BFP/BFV Sulfuric acid 30-50% BFV BFV. Hydrochloric acid 15% BFP/BFV BFV-180 ** Sulfuric acid 50-70% BFV BFV-180 **. Hydrochloric acid 37% BFP/BFV BFV-150 ** Trisodium phosphate 25% BFP/BFV BFV-210 **. Kerosene BFP/BFV BFP/BFV Trisodium phosphate-All BFV BFV-210 **. Magnesium chloride BFP/BFV BFP/BFV Water, Distilled BFP/BFV BFP/BFV. BFP - BFP parts recommended BFV - BFV parts recommended ** - Not recommended to exceed this temperature Information contained in this chart is based on data from raw material suppliers. Temperatures are not the minimum nor the maximum (except where specifically stated) but represent standard test conditions. The products may be suitable at higher temperatures but individual test data should be required to establish suitability.

5 The recommendations or suggestions contained in this chart are made without guarantee or representation as to results. We suggest that you evaluate the recommendations and suggestions in your own laboratory or actual field trial prior to use. Recommended Guideline: Flame Retardant Properties BFP BFV. Temperature Design Load Multiplier Flame Resistance (FTMS 406-2023). ign/burn, seconds 75/75 75/75. 75 F (24 C) 100%. Intermittent Flame Test (HLT-15), rating 100 100. 100 F (38 C) 90%. Flammability Test (ASTM D635). 125 F (52 C) 78% Ignition none none 150 F (66 C) 68% Burning Time 0 sec. 0 sec. 175 F (79 C) 60% Surface Burning Characteristics (ASTM E84), 200 F (93 C) 52% Flame spread index 25 25. UL 94 Flame Class V-0 V-0. Reference page 183 for general fitting specifications. Strut Systems 184. Fiberglass BFP22 THRU BFV22SH.

6 Channel lengths: 10 Ft. ( m) and 20 Ft. ( m). Fiberglass strut meets specification of ASTM D-4385 Levels III and IV. BFP22 BFP22H17/8 BFP22SH. BFV22 BFV22H17/8 BFV22SH. 9/16 ( ) holes 9/16 ( ) x 7/8 ( ) slots Solid Back 7. 1 /8 ( ) on centers 2 ( ) on centers Fiberglass Materials 13/16 . Part No. Material Description Color Weight ( ). kg/m BFP22* Polyester Resin Solid Back Gray .63 (.94). BFV22* Vinyl Ester Resin Solid Back Beige .63 (.94). 15/8 . BFP22H17/8* Polyester Resin Holes in Back Gray .60 (.89) ( ). BFV22H17/8* Vinyl Ester Resin Holes in Back Beige .60 (.89). BFP22SH* Polyester Resin Slots in Back Gray .61 (.91). BFV22SH* Vinyl Ester Resin Slots in Back Beige .61 (.91). 15/8 . * Insert -10 for 10'-0 ( m) length or -20 for 20'-0 ( m) length ( ). BFP22A 13/16 . BFV22A ( ). Channel Lengths: 10 Ft.

7 ( m) and 20 Ft. ( m). Fiberglass strut meets specification of ASTM D-4385 Levels III and IV. 15/8 . ( ). BFP22A. BFV22A 31/4 . ( ). Solid Back to Back Part No. Material Description Color Weight kg/m BFP22A* Polyester Resin Back To Back Gray ( ) 15/8 . BFV22A* Vinyl Ester Resin Back To Back Beige ( ) ( ). * Insert -10 for 10'-0 ( m) length or -20 for 20'-0 ( m) length Published design loads on page 187 are based on usage at 70 F (21 C) and must be reduced for continuous exposure to higher temperatures. Field Cutting Sealant Kits Refer to the chart below for high temperature RSK010 Pint Sealing Kit (473 cm3) applications. includes sealant and brush applicator Temperature Design Load Multiplier Seals exposed fibers after field cutting.. UV resistant 75 F (24 C) 100%. 100 F (38 C) 90%. 125 F (52 C) 78%.

8 150 F (66 C) 68%. 175 F (79 C) 60%. 200 F (93 C) 52%. APPROPRIATE PROTECTIVE CLOTHING AND RESPIRATORY PROTECTION DEVICE SHOULD BE WORN WHEN FIELD CUTTING OR GRINDING Fiberglass . Reference page 183 for general fitting specifications. 185 Strut Systems Fiberglass Beam Loading Data for Glass Reinforced Polyester Resin Maximum Deflection Beam Allowable @ Maximum Allowable Load @ Deflection =. Span Part Beam Load Allowable No. Load Beam Load 1/240 Span 1/360 Span in. mm Lbs. kN in. mm Lbs. kN Lbs. kN. BFP22 1781 ( ) ( ) 1392 ( ) 928 ( ). 12 (305). BFP22A 2259 ( ) (.94) 2259 ( ) 2051 ( ). BFP22 890 ( ) ( ) 347 ( ) 231 ( ). 24 (609). BFP22A 1127 ( ) ( ) 767 ( ) 511 ( ). BFP22 592 ( ) ( ) 153 ( ) 101 ( ). 36 (914). BFP22A 750 ( ) ( ) 338 ( ) 224 ( ). Fiberglass Materials BFP22 443 ( ) ( ) 85 ( ) 55 ( ).

9 48 (1219). BFP22A 560 ( ) ( ) 188 ( ) 123 ( ). BFP22 353 ( ) ( ) 53 ( ) 34 ( ). 60 (1524). BFP22A 446 ( ) ( ) 117 ( ) 76 ( ). BFP22 293 ( ) ( ) 35 ( ) 22 ( ). 72 (1829). BFP22A 370 ( ) ( ) 78 ( ) 50 ( ). BFP22 218 ( ) ( ) 17 ( ) 9 ( ). 96 (2438). BFP22A 273 ( ) ( ) 39 ( ) 23 ( ). BFP22 172 ( ) ( ) 8 ( ) 3 ( ). 120 (3048). BFP22A 214 ( ) ( ) 19 ( ) 9 ( ). Beam Loading Data for Glass Reinforced Vinyl Ester Resin Maximum Deflection Beam Allowable @ Maximum Allowable Load @ Deflection =. Span Part Beam Load Allowable No. Load Beam Load 1/240 Span 1/360 Span in. mm Lbs. kN in. mm Lbs. kN Lbs. kN. BFV22 2220 ( ) ( ) 1568 ( ) 1045 ( ). 12 (305). BFV22A 6442 ( ) ( ) 6442 ( ) 5549 ( ). BFV22 1109 ( ) ( ) 391 ( ) 260 ( ). 24 (609). BFV22A 3219 ( ) ( ) 2079 ( ) 1385 ( ). BFV22 738 ( ) ( ) 172 ( ) 114 ( ).

10 36 (914). BFV22A 2144 ( ) ( ) 922 ( ) 613 ( ). BFV22 553 ( ) ( ) 96 ( ) 63 ( ). 48 (1219). BFV22A 1606 ( ) ( ) 516 ( ) 342 ( ). BFV22 441 ( ) ( ) 60 ( ) 39 ( ). 60 (1524). BFV22A 1283 ( ) ( ) 327 ( ) 216 ( ). BFV22 366 ( ) ( ) 40 ( ) 25 ( ). 72 (1829). BFV22A 1067 ( ) ( ) 224 ( ) 147 ( ). BFV22 273 ( ) ( ) 19 ( ) 11 ( ). 96 (2438). BFV22A 796 ( ) ( ) 121 ( ) 78 ( ). BFV22 216 ( ) ( ) 9 ( ) 7 ( ). 120 (3048). BFV22A 633 ( ) ( ) 72 ( ) 44 ( ). Loading Information Beam Loads: The above charts list the total allowable uniform load for various simple spans based on a minimum safety factor of 2. If the load is concentrated at center span, multiply the load from the above charts by and the corresponding deflection by All beams should be supported in a manner to prevent rotation at supports. Long, deep beams should be tied between supports to prevent twist.


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